Marine Centrifugal Pump Performance, NPSH, Cavitation & System Curve Tool
Find where the pump actually operates against the ship's piping system, then screen suction margin, cavitation exposure, motor loading and off-design operation. Simple mode uses a fast quadratic pump/system approximation. Advanced uses entered OEM curve points, Darcy-Weisbach system losses, pressure/elevation terms, NPSHr, speed changes and multiple-pump arrangements.
Pump Curve Approximation
System & NPSH
Pump Arrangement & Operating Limits
Fluid, Source & Destination
OEM Pump Curve Register
Enter pump flow, head, efficiency and NPSHr at the OEM curve speed. The operating point is solved only within the entered curve range. For speed changes, affinity-law scaling is used as an engineering estimate and should be checked against manufacturer limits.
| Use | Flow m³/h | Head m | Efficiency % | NPSHr m |
|---|
System Loss Register
Pipe losses use Darcy-Weisbach. K represents valves/fittings on that row. A fixed component ΔP can represent a strainer, cooler, filter or other item and is scaled with flow squared from its reference flow.
| Use | Side | Component | Length m | ID mm | Roughness mm | K | Fixed ΔP kPa | ΔP ref flow m³/h |
|---|
Operating Scenario Register
Stress the same pump/system with different speed, tank levels, resistance and pump count. Scenarios do not alter the baseline inputs above.
| Use | Scenario | Speed % of OEM | Source level Δm | Destination level Δm | System resistance % | Pumps | Arrangement |
|---|